| Features: | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Bifidobacterium animalis subsp. lactis GCL2505 — a strain-specific probiotic bacterium, commercially known as the BifiX strain, selected for unusually effective gastrointestinal survival and proliferation after reaching the intestine. It is formally classified as a live probiotic microorganism rather than a drug or small-molecule agent. Standard abbreviations include GCL2505, B. lactis GCL2505, and BifiX. The strain was developed and commercialized by Ezaki Glico in Japan and is used in fermented dairy products and synbiotic formulations, frequently together with inulin. Its best-supported biological effects arise from alteration of intestinal microbiota and increased short-chain fatty acid production rather than direct systemic exposure to the organism. Primary mechanisms (ranked):
Bioavailability / PK relevance: Conventional drug PK is not directly applicable because GCL2505 is a live probiotic whose principal site of action is the gastrointestinal tract. Relevant exposure variables are viable CFU delivered, survival through gastric and bile conditions, intestinal proliferation, microbiome context, diet, and availability of fermentable substrate. Human studies commonly use approximately 1 × 1010 CFU/day. GCL2505 has particularly high bile tolerance and can proliferate after intestinal delivery. Systemic exposure to viable bacteria is neither required nor desirable; systemically absorbed microbial metabolites, especially acetate, provide one route for distal host effects. In-vitro vs systemic exposure relevance: This is not primarily a concentration-driven small-molecule intervention, so comparison of in-vitro micromolar concentrations with plasma exposure is not meaningful. Translational interpretation should instead compare viable dose, intestinal survival, microbiome engraftment/proliferation, SCFA production, and downstream metabolite exposure. Effects demonstrated with GCL2505 plus inulin should not automatically be attributed to GCL2505 alone because the prebiotic substantially alters the microbiome and fermentation response. Clinical evidence status: Human RCT evidence exists for intestinal bifidogenic effects, bowel function, visceral/body-fat reduction, resting energy expenditure, and cognitive-function endpoints, but several newer studies evaluated GCL2505 together with inulin rather than the strain alone. GCL2505-containing BifiX foods are commercially deployed in Japan, including Foods with Function Claims products. There is no established direct anticancer indication and no evidence supporting GCL2505 as an oncology treatment. Safety has generally been favorable in trials involving healthy or overweight adults, but because this is a live microorganism, probiotic use warrants additional caution in severely immunocompromised, critically ill, or otherwise high-risk patients because invasive Bifidobacterium infections, although rare, can occur. Alzheimer's disease relevance: GCL2505 has meaningful but indirect AD relevance through the microbiota–gut–brain axis. A randomized human trial of GCL2505 plus inulin demonstrated improvements in overall cognitive function, attention, cognitive flexibility, and executive function in older adults. Follow-up multi-omics analysis associated cognitive improvement with increased Bifidobacterium and Faecalibacterium, greater short-chain-fatty-acid-producing capacity, and reduced inflammatory signaling. These pathways are relevant to AD because gut dysbiosis, reduced microbial SCFA production, systemic inflammation, and neuroinflammation are increasingly implicated in cognitive decline and AD pathophysiology. However, GCL2505 has not been demonstrated to reduce amyloid-β, tau pathology, or progression of clinically diagnosed Alzheimer's disease in humans. Evidence should therefore be classified as human cognitive / gut-brain-axis evidence rather than established AD therapy. GCL2505 AD-Relevant Mechanisms
P: 0–30 min R: 30 min–3 hr G: >3 hr |
| Source: |
| Type: |
| Gut microbiome may affect responses to numerous forms of cancer therapy. The gut microbiota plays a multifaceted role in cancer biology, influencing tumor development, progression, and patient prognosis. Dysbiosis and specific microbial populations have been linked to various cancers, with implications for patient outcomes. While the relationship between gut microbiota and cancer prognosis is an active area of research, it holds promise for the development of microbiome-based biomarkers and therapeutic strategies in oncology. |
| 7670- | GCL2505, | Effect of Continuous Ingestion of Bifidobacteria and Dietary Fiber on Improvement in Cognitive Function: A Randomized, Double-Blind, Placebo-Controlled Trial |
| - | Trial, | AD, | NA |
| 7664- | IP, | GCL2505, | Administration of bifidobacteria and dietary fiber improves cognitive function by increasing short-chain fatty acid-producing bacteria and reducing inflammation |
| - | Trial, | AD, | NA |
Query results interpretion may depend on "conditions" listed in the research papers. Such Conditions may include : -low or high Dose -format for product, such as nano of lipid formations -different cell line effects -synergies with other products -if effect was for normal or cancerous cells
Filter Conditions: Pro/AntiFlg:% IllCat:% CanType:% Cells:% prod#:456 Target#:350 State#:% Dir#:%
wNotes=0 sortOrder:rid,rpid